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Voltage Flicker Mitigation Using STATCOM and BESS

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Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The Voltage flicker, a phenomenon of annoying light intensity fluctuation, caused by rapid change in industrial and domestic load such as Electric Arc Furnaces (EAF), rolling mills, welding equipments and pumps operating periodically has been a major concern for supply utilities, electricity regulatory agencies and customers. Static Voltage Compensators (SVC's) and Static Synchronous Compensators (STATCOM) have been able to solve the voltage flicker problem by rapidly controlling the reactive power. But, the control of active power along with reactive power control helps to mitigate the voltage flicker problem more effectively. In this paper, voltage flicker mitigation of EAF with STATCOM along with Battery Energy Storage System (BESS) is presented and performance results of the system using PSCAD/EMTDC software are analyzed.
Rocznik
Strony
51--57
Opis fizyczny
Bibliogr. 15 poz., rys., tab.
Twórcy
  • National Institute of Technology, NAGPUR, India
autor
Bibliografia
  • l. Montanari G.C., Logging M., Cavallin A., Pitti L.: Flicker and distortion in electrical plants supplying arc-furnaces, in: Proceedings of the 1994. IAS Annual Meeting, Colorado, October I994.PP-2249-2255.
  • 2. Ashole P. and Amante P.: System Flicker disturbances Iram Industrial Loads and their compensation. Power engineering Journal, Oct. I997,pp.213-218.
  • 3. IEEE Recommended Practices for Electric Power Distribution for Industrial Plants. 1994, IEEE Standard 141-1993.
  • 4. IEEE Recommended Practices for Harmonic Control in Electric Power Systems. IEEE Standard 519-1992, 1993, pp. 80-82.
  • 5. IEEE Recommended Practices for Measurement and Limits of Voltage Fluctuations and Associated Light Flicker on AC Power Systems. 2004, IEEE Standard 1453.
  • 6. Garcia-Gerrada A., Garcia-Gonzalez P., Collantes R.: Comparison afThyristor-Controlled Reactor and Voltage Source inverters for Compensation of Flicker Caused by Arc furnaces. IEEE Trans power Delivery, vol. 15, 2000, pp. 1225-1231.
  • 7. Yang Z., Shen C., Zhang L., Crow M. L. and Arcitty S.t Integration of'a STATCOM' and Battery Energy Storage. IEEE Trans Power System, Vol. 16, May 2001 ,pp.. 254-260.
  • 8. Toxin Zheng, Makaram E. B .: An Adaptive arc furnace model. IEEE Trans on Power Delivery, vol. 15, July 2000, no. 3, pp.931-939.
  • 9. Vardan S., Makaram E. B., Girgis A. A..: A new lime domain voltage source model for an arc furnace using EMTP. IEEE trans on Power Delivery, vol. 11. July 1996 , no. 3, pp. 1685-1691
  • 10. Li Zhang, Yilu Liu, Ingram M.R., Bradshaw D.T., Eckroad S. and Crow M.L.: EAF Voltage Flicker Mitigation By FACTS/ESS. Power System Conference & Exposition, vol. 1, Oct.2004, pp. 372-378.
  • 11. Das J.C.: Passive Filterss- potentialities and limitations. IEEE Trans on 1AS, vol. 40, no. 1, Jan. 2004 , pp-232-241.
  • 12. Chong Han, Zhanoning Yang, Bin Chen, Alex Q. Haung, Bin Zhang, Michael Ingram, Abdel-Atey; valuation of Cascade-Multilevel-Converter-Based STATCOM for Arc Furnace Flicker Mitigation. IEEE Trans. On Industry Application, vol. 43, March-April 2007, No.2.
  • 13. Chen Shen, Zhipping Yang, Mariesa L. Crow, Stan Atcitty: Control of STATCOM with Energy Storage Device. Proceedings of Power Engineering Society Winter Meeting (2000).
  • 14. Schauder C.et al.: Vector analysis and control of advanced Static VAR compensators. IEE Proceeding-C Vol. 140, July 1993, No. 4.
  • 15. Akagi H., Kanazawa Y., Nabae h.: Instantaneous reactive power compensators comprising switching devices without energy:storage components. IEEE Trans. On Industry Application, vol. 1A-20, no. 3, May/June 1984, pp. 625-630.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-2f9d5af5-b3f8-4d3b-962b-3f6c33a9889c
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